Numerical solution for lid driven cavity flow exploring finite difference techniqu...
A convection scheme for conservation laws with application in 3D incompressible fl...
Differential equations with fractional derivatives and their applications
Grant number: | 07/51490-7 |
Support Opportunities: | Research Projects - Thematic Grants |
Start date: | October 01, 2007 |
End date: | September 30, 2011 |
Field of knowledge: | Physical Sciences and Mathematics - Mathematics - Applied Mathematics |
Agreement: | CNRS |
Principal Investigator: | Milton da Costa Lopes Filho |
Grantee: | Milton da Costa Lopes Filho |
Principal researcher abroad: | Dragos Iftimie |
Institution abroad: | Université Claude Bernard Lyon 1, France |
Host Institution: | Instituto de Matemática, Estatística e Computação Científica (IMECC). Universidade Estadual de Campinas (UNICAMP). Campinas , SP, Brazil |
Pesquisadores principais: | Helena Judith Nussenzveig Lopes |
Associated research grant(s): | 10/17929-4 - Visit of Evelyne Miot to UNICAMP,
AV.EXT 09/15045-4 - Non-Newtonian flows around small obstacles, AV.EXT |
Associated scholarship(s): | 10/11176-4 - The viscous vortex-wave system.,
BP.PD 08/09473-0 - Boundary layers in incompressible flows, BP.PD |
Abstract
The main objects of this project are solutions of the incompressible flow equations, especially those with irregular or turbulent behavior. Broadly speaking, our research is characterized by the use of the tools of modern analysis in physically relevant problems in fluid dynamics. The ultimate goal of this research is to determine the limits of validity of the classical equations of Euler and Navier-Stokes as models for singular or turbulent flow. Among the specific lines of investigation which we intend to pursue we highlight: 1) flows in singularly perturbed do mains; 2) nonlinear stability of travelling waves associated with ideal flows; 3) singular solutions of the semigeostrophic equations; 4) analytical behavior of boundary layers; 5) flows with concentrated or oscillatory forcing. (AU)
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